Goenka Shreevrat, Cho Sung Hoon, Boothby Mark
Department of Microbiology and Immunology, Vanderbilt University Medical Center, Nashville, Tennessee 37232-2363, USA.
J Biol Chem. 2007 Jun 29;282(26):18732-9. doi: 10.1074/jbc.M611283200. Epub 2007 May 3.
The transcription factor Stat6 plays a critical role in interleukin-4-dependent gene activation. To mediate this function, Stat6 recruits canonical transcriptional co-activators including the histone acetyl transferases CREB-binding protein and NCoA-1 and other proteins such as a p100 co-factor. However, much remains unknown regarding the constituents of Stat6 enhancer complexes, and the exact molecular events that modulate Stat6-dependent gene activation are not fully understood. Recently, we identified a novel co-factor, CoaSt6 (collaborator of Stat6), which associates with Stat6 and enhances its transcriptional activity. Sequence homologies place CoaSt6 in a superfamily of poly(ADP-ribosyl)polymerase (PARP)-like proteins. We have demonstrated here that PARP enzymatic activity is associated with CoaSt6, and this function of CoaSt6 can append ADP-ribose to itself and p100. Further, we show that a catalytically inactive mutant of CoaSt6 was unable to enhance Stat6-mediated transcription of a test promoter. Consistent with these findings, chemical inhibition of PARP activity blocked interleukin-4-dependent transcription from target promoters in vivo. Taken together, we have identified a CoaSt6-associated PARP activity and provided evidence for a role of poly(ADP ribosyl)ation in Stat-mediated transcriptional responses involving a novel PARP.
转录因子Stat6在白细胞介素-4依赖性基因激活中起关键作用。为介导这一功能,Stat6招募包括组蛋白乙酰转移酶CREB结合蛋白和NCoA-1在内的典型转录共激活因子以及其他蛋白质,如p100辅因子。然而,关于Stat6增强子复合物的组成成分仍有许多未知之处,调节Stat6依赖性基因激活的确切分子事件也尚未完全了解。最近,我们鉴定出一种新型辅因子CoaSt6(Stat6的协同因子),它与Stat6结合并增强其转录活性。序列同源性将CoaSt6置于聚(ADP-核糖基)聚合酶(PARP)样蛋白超家族中。我们在此证明PARP酶活性与CoaSt6相关,并且CoaSt6的这一功能可将ADP-核糖附加到自身和p100上。此外,我们表明CoaSt6的催化失活突变体无法增强Stat6介导的测试启动子的转录。与这些发现一致,PARP活性的化学抑制在体内阻断了靶启动子的白细胞介素-4依赖性转录。综上所述,我们鉴定出了一种与CoaSt6相关的PARP活性,并为聚(ADP核糖基)化在涉及新型PARP的Stat介导的转录反应中的作用提供了证据。